Design principles for enabling an anode-free sodium all-solid-state battery

  • Deysher, Grayson; 
  • Oh, Jin An Sam; 
  • Chen, Yu-Ting; 
  • Sayahpour, Baharak; 
  • Ham, So-Yeon; 
  • ... Jang, Jihyun; 
  • 외 7명
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183

초록

Anode-free batteries possess the optimal cell architecture due to their reduced weight, volume and cost. However, their implementation has been limited by unstable anode morphological changes and anode-liquid electrolyte interface reactions. Here we show that an electrochemically stable solid electrolyte and the application of stack pressure can solve these issues by enabling the deposition of dense sodium metal. Furthermore, an aluminium current collector is found to achieve intimate solid-solid contact with the solid electrolyte, which allows highly reversible sodium plating and stripping at both high areal capacities and current densities, previously unobtainable with conventional aluminium foil. A sodium anode-free all-solid-state battery full cell is demonstrated with stable cycling for several hundred cycles. This cell architecture serves as a future direction for other battery chemistries to enable low-cost, high-energy-density and fast-charging batteries. Anode-free batteries are cost effective but limited by unstable anode morphology and interface reactions. Here the authors discuss design parameters and construct an anode-free sodium solid-state battery using compressed aluminium particles as the anode current collector to improve cycling performance.

키워드

ELECTROLYTE INTERPHASE; CURRENT COLLECTOR; LITHIUM; LI; PROPAGATION; PERFORMANCE; INTERFACES; DENSITY; SEM; NA
제목
Design principles for enabling an anode-free sodium all-solid-state battery
저자
Deysher, Grayson; Oh, Jin An Sam; Chen, Yu-Ting; Sayahpour, Baharak; Ham, So-Yeon; Cheng, Diyi; Ridley, Phillip; Cronk, Ashley; Lin, Sharon Wan-Hsuan; Qian, Kun; Nguyen, Long Hoang Bao; Jang, Jihyun; Meng, Ying Shirley
DOI
10.1038/s41560-024-01569-9
발행일
2024-09
유형
Article
저널명
Nature Energy
권
9
호
9
페이지
1161 ~ 1172